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An Integrated Approach for Constraining Depositional Zones in a Tide-Influenced River: Insights from the Gorai River, Southwest Bangladesh

机译:一种潮汐影响河流中沉积区的综合方法:来自孟加拉国西南戈奈河的见解

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摘要

The tidal to fluvial transition (TFT) of estuaries and coastal rivers is one of the most complex environments on Earth with respect to the transportation and deposition of sediment, owing in large part to competing fluvial and marine processes. While there have been recent advances in the stratigraphic understanding of the TFT, it is still unclear whether these findings are site-specific or representative of mixed tidal-fluvial systems worldwide. Yet, research from this depositional domain holds profound societal and economic importance. For instance, understanding the underlying stratigraphic architecture of channel margins is critical for assessing geomorphic change for fluvio-deltaic settings, which are generally vulnerable to lateral channel migration and resultant erosion. Findings would also benefit paleo-geographic reconstructions of ancient tide-influenced successions and provide an analog for hydrocarbon reservoir models. In the Ganges-Brahmaputra Delta of Bangladesh, the Gorai River is one of two Ganges distributaries actively connected to the Bay of Bengal. With fluvial input from the Ganges and meso-scale (2−4 m range) tides at the coast, the Gorai exhibits a variety of hydrodynamic regimes across its 350-km reach, providing a unique opportunity to investigate along-channel depositional patterns across the TFT. This study integrates multiple datasets—core sedimentology, river channel bathymetry, and remote sensing—to provide a process-based framework for determining the relative position of sedimentary deposits within the tidal-fluvial continuum of the Gorai River. The results of this investigation reveal coincident, abrupt shifts in river channel morphology and sediment character, suggesting the occurrence of backwater-induced mass extraction of relatively coarse sediments (i.e., fine sand). Despite being situated in an energetic tidal environment, evidence of tidal cyclicity in cored sediments is relatively rare, and the bulk stratigraphy appears strongly overprinted by irregularly spaced cm- to dm-scale sediment packages, likely derived from monsoonal flood pulses. Such findings differ from previously-studied mixed tidal-fluvial systems and underscore the site-specific complexities associated with this depositional domain.
机译:河口和沿海河流的潮流过渡(TFT)是地球上最复杂的环境中最复杂的环境之一,沉积物的运输和沉积在很大程度上是竞争的河流和海洋过程。虽然对TFT的地层理解最近进行了最新进展,但目前还不清楚这些发现是否是全球混合潮流系统的特定于特别的或代表。然而,从这个沉积领域的研究具有深刻的社会和经济意义。例如,了解渠道边距的底层地层架构对于评估氟维奥 - 甜味设置的地貌变化至关重要,这通常容易受到横向沟道迁移和结果侵蚀的影响。调查结果还将受益于古代潮汐影响的古地区的地理重建,并为碳氢化合物储层模型提供类似物。在孟加拉国的Ganges-Brahmaputra三角洲,戈奈河是两大恒河分布之一,积极连接到孟加拉湾。随着河岸的恒河和中间规模(2-4米范围)潮汐进入海岸的河流,戈奈在350公里的350公里展出各种流体动力学制度,提供了一个独特的机会,可以沿着通道沉积图案调查TFT。本研究集成了多个数据集 - 核心沉积学,河流浴浴曲线和遥感 - 提供基于过程的框架,用于确定戈奈河潮汐河流连续体内沉积沉积物的相对位置。该研究的结果揭示了河道形态和沉积物特征的一致,突然的变化,表明反水诱导的相对粗沉积物的体重提取(即细砂)。尽管处于充满活力的潮汐环境中,但芯片沉积物中的潮汐循环性的证据相对较少,并且散列地层似乎通过不规则间隔的CM至DM型沉积物包似乎强烈叠印,可能来自季风泛脉冲。这些发现与先前研究的混合潮氟化系统不同,并强调与该沉积结构域相关的位点特异性复杂性。

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